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Single-locus heterotic effects and dominance by dominance interactions can adequately explain the genetic basis of heterosis in an elite rice hybrid

机译:单基因座杂种效应和优势相互作用的优势可以充分解释杂种优势水稻的杂种优势的遗传基础

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摘要

The genetic basis of heterosis of an elite rice hybrid was investigated by using an “immortalized F2” population produced by randomly permutated intermating of 240 recombinant inbred lines from a cross between the parents of Shanyou 63, the most widely cultivated hybrid in China. Measurements of heterosis for crosses in the immortalized F2 population were obtained from replicated field trials over 2 years by inter-planting the hybrids with the parental recombinant inbred lines. The analyses were conducted making use of a linkage map comprising 231 segregating molecular marker loci covering the entire rice genome. Heterotic effects were detected at 33 loci for the four traits with modified composite interval mapping. The heterotic loci showed little overlap with quantitative trait loci for trait performance, suggesting that heterosis and trait performance may be conditioned by different sets of loci. Large numbers of digenic interactions were resolved by using two-way ANOVA and confirmed by randomization tests. All kinds of genetic effects, including partial-, full-, and overdominance at single-locus level and all three forms of digenic interactions (additive by additive, additive by dominance, and dominance by dominance), contributed to heterosis in the immortalized F2 population, indicating that these genetic components were not mutually exclusive in the genetic basis of heterosis. Heterotic effects at the single-locus level, in combination with the marginal advantages of double heterozygotes caused by dominance by dominance interaction at the two-locus level could adequately explain the genetic basis of heterosis in Shanyou 63. These results may help reconcile the century-long debate concerning the genetic basis of heterosis.
机译:通过使用来自中国最广泛栽培的杂交种汕优63亲本的杂交,通过随机排列确定240个重组自交系产生的“永生F2”群体,研究了优良水稻杂种的杂种优势的遗传基础。通过将杂种与亲本重组近交系进行间种植,可从2年的重复田间试验中获得永生化F2群体杂交的杂种优势。利用包含覆盖整个水稻基因组的231个分离的分子标记基因座的连锁图谱进行了分析。使用改良的复合区间作图法,在四个性状的33个基因座处检测到了杂种优势。杂种位点与数量性状基因座的性状表现几乎没有重叠,表明杂种优势和性状表现可能受不同组基因座的调节。通过使用双向方差分析解决了大量的双基因相互作用,并通过随机测试证实。各种遗传效应,包括单基因座水平的部分,全部和主导优势,以及所有三种形式的双基因相互作用(通过加性相加,通过显性相加和基于显性而占优势),导致了永生化F2群体的杂种优势。 ,表明这些遗传成分在杂种优势的遗传基础上并不互斥。单基因座水平的杂种效应,再加上两基因座水平上的优势相互作用所产生的优势所造成的双重杂合子的边际优势,可以充分解释汕优63杂种优势的遗传基础。这些结果可能有助于调和本世纪-关于杂种优势的遗传基础的长期争论。

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